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Thermal fluid-structure interaction and coupled thermal-stress analysis in a cable stayed bridge exposed to fire

机译:火灾下斜拉桥的热流固耦合及热应力耦合分析

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摘要

In this paper, thermal fluid structure-interaction (TFSI) and coupled thermal-stress analysis are utilized to identify the effects of transient and steady-state heat-transfer on the vortex induced vibration and fatigue of a segmental bridge deck due to fire incidents. Numerical simulations of TFSI models of the deck are dedicated to calculate the lift and drag forces in addition to determining the lock-in regions once using fluid-structure interaction (FSI) models and another using TFSI models. Vorticity and thermal convection fields of three fire scenarios are simulated and analyzed. Simiu and Scanlan benchmark is used to validate the TFSI models, where a good agreement was manifested between the two results. Extended finite element method (XFEM) is adopted to create 3D models of the cable stayed bridge to simulate the fatigue of the deck considering three fire scenarios. Choi and Shin benchmark is used to validate the damaged models of the deck in which a good coincide was seen between them. The results revealed that TFSI models and coupled thermal-stress models are significant in detecting earlier vortex induced vibration and lock-in regions in addition to predicting damages and fatigue of the deck due to fire incidents.
机译:在本文中,利用热流体结构相互作用(TFSI)和耦合热应力分析来确定瞬态和稳态传热对涡型诱发桥面火灾引起的涡旋振动和疲劳的影响。甲板的TFSI模型的数值模拟除了用于确定锁定区域外,还专门用于计算升力和阻力,一旦使用流体-结构相互作用(FSI)模型,而使用TFSI模型来确定锁定区域。对三种火灾场景的涡流场和热对流场进行了仿真分析。 Simiu和Scanlan基准用于验证TFSI模型,这两个结果之间表现出良好的一致性。采用扩展有限元方法(XFEM)来创建斜拉桥的3D模型,以考虑三种火灾情况模拟甲板的疲劳。 Choi和Shin基准用于验证甲板之间的损坏模型,在这些模型之间可以看到很好的重合。结果表明,TFSI模型和耦合的热应力模型在预测较早的涡流诱发的振动和锁定区域方面具有重要意义,此外还可以预测火灾引起的甲板损坏和疲劳。

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